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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >An experimental and coupled thermo-mechanical finite element study of heat partition effects in machining
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An experimental and coupled thermo-mechanical finite element study of heat partition effects in machining

机译:加工中热分配效应的实验和热力耦合有限元研究

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摘要

A better understanding of heat partition between the tool and the chip is required in order to produce more realistic finite element (FE) models of machining processes. The objectives are to use these FE models to optimise the cutting process for longer tool life and better surface integrity. In this work, orthogonal cutting of AISI/SAE 4140 steel was performed with tungsten-based cemented carbide cutting inserts at cutting speeds ranging between 100 and 628 m/min with a feed rate of 0.1 mm/rev and a constant depth of cut of 2.5 mm. Cutting temperatures were measured experimentally using an infrared thermal imaging camera. Chip formation was simulated using a fully coupled thermo-mechanical finite element model. The results from cutting tests were used to validate the model in terms of deformed chip thickness and cutting forces. The coupled thermo-mechanical model was then utilised to evaluate the sensitivity of the model output to the specified value of heat partition. The results clearly show that over a wide range of cutting speeds, the accuracy of finite element model output such as chip morphology, tool–chip interface temperature, von Mises stresses and the tool–chip contact length are significantly dependent on the specified value of heat partition. Keywords Heat partition - Thermo-mechanical modelling - Finite element method - Chip formation
机译:为了产生更逼真的加工过程有限元(FE)模型,需要更好地了解刀具与切屑之间的热分配。目的是使用这些有限元模型来优化切削过程,以延长刀具寿命并改善表面完整性。在这项工作中,使用钨基硬质合金切削刀片对AISI / SAE 4140钢进行正交切削,切削速度范围为100至628 m / min,进给速度为0.1 mm / rev,恒定切削深度为2.5毫米切割温度是使用红外热像仪通过实验测量的。使用完全耦合的热机械有限元模型模拟了切屑的形成。切削测试的结果被用来根据变形的切屑厚度和切削力对模型进行验证。然后,使用耦合的热力模型来评估模型输出对指定的热分配值的敏感性。结果清楚地表明,在很宽的切削速度范围内,有限元模型输出的精度(例如切屑形态,刀具-切屑界面温度,冯·米塞斯应力和刀具-切屑接触长度)在很大程度上取决于规定的热量划分。关键词热分区热力学建模有限元方法切屑形成

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